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陶静梅

更新日期:2018-03-09

 

4688美高美游戏官网研究生导师简介


   

陶静梅

   

   

教授

   

博士生导师

出生年月 

1979.01

最高学位

博士

电子邮箱

kiwimaya@126.com

研究方向

新型金属基复合材料;纳米结构材料

教育背景

2010-082011-08, 美国北卡罗来纳州立大学, 4688美高美游戏官网, 访问学者

2007-092012-12,4688美高美游戏官网,材料学,博士

2002-092004-12,重庆大学,材料学,硕士

1997-092001-07, 中南大学,材料科学与工程,学士

在研项目

 

先后主持及完成了3项国家自然科学基金项目及多项省级重大专项课题。目前在研的项目有:

1、(主持)云南省兴滇英才支持计划青年拔尖人才2019.01-2023.12

2、(主持)碳纳米管-石墨烯混合增强铜基复合材料的结构设计、力学及导电性能研究,国家自然科学基金(地区科学基金项目),2019.01-2022.12

3、(主持)三维块体复合材料的高通量制备,云南省科技厅重大专项,2019.01-2022.12

4、(主持)电动汽车高转速驱动电机铸铜转子铜基新材料的成分设计,云南省科技厅重大专项,2019.01-2022.12

5、(主持)新型高导电、导热铜基复合材料导线的设计与关键制备技术,云南省科技厅重大专项4688美高美游戏官网双一流建设项目,2022.04-2025.04

科研成果

代表性论文(Selected Publications

[1] Junqin Feng, Jingmei Tao *, Yichu Liu, Rui Bao, Fengxian Li, Dong Fang, Caiju Li, Jianhong Yi. Optimization of the mechanical properties of CNTs/Cu composite by regulating the size of interfacial TiC. Ceramics International, 2022, 48: 26716–26724

[2]Yang Liu, Jingmei Tao*, Yichun Liu, Yong Hu, Rui Bao, Fengxian Li, Dong Fang, Caiju Li, Jianhong Yi. Regulating the mechanical properties and electrical conductivity of CNTs/Cu composites by tailoring nano-sized TiC on the surface of intact CNTs, Carbon, 2021, 185: 428-441

[3]Xia Wei, Jingmei Tao*, Yong Hu, Yichun Li, Rui Bao, Fengxian Li, Dong Fang, Caiju Li, Jianhong Yi. Enhancement of mechanical properties and conductivity in carbon nanotubes (CNTs)/Cu matrix composite by surface and intratube decoration of CNTs, Materials Science & Engineering A, 2021, 816: 141248

[4] He Zhang, Yang Liu, Jingmei Tao*, Yichun Liu, Rui Bao, Fengxian Li, Jianhong Yi. Direct synthesis of carbon nanotube-graphene hybrids on copper powders and the mechanical properties of corresponding composites, Materials Science & Engineering A, 2021, 825: 141861

[5] Xiaofeng Chen, Jingmei Tao*, Yichun Liu, Rui Bao, Fengxian Li, Caiju Li, Jianhong Yi, Interface interaction and synergistic strengthening behavior in pure copper matrix composites reinforced with functionalized carbon nanotube-graphene hybrids. Carbon, 2019, 146: 736-755.

[6] Mengyuan Wang, Xu Yang, Jingmei Tao*, Yi Bu, Yichun Liu, Zhoumeng Pu, Jianhong Yi, Achieving high ductility in layered carbon nanotube/copper composite prepared by composite electrodeposition.  Diamond & Related Materials, 2020, 108: 107992

[7] Xia Wei, Jingmei Tao*, Yichun Liu, Rui Bao, Fengxian Li, Dong Fang, Caiju Li, Jianhong Yi, High strength and electrical conductivity of copper matrix composites reinforced by carbon nanotube-graphene oxide hybrids with hierarchical structure and nanoscale twins. Diamond & Related Materials, 2019, 99: 107537

[8] Guijun Liu, Jingmei Tao*, Fengxian Li, Rui Bao, Yichun Liu, Caiju Li, Jianhong Yi, Optimizing the interface bonding in Cu matrix composites by using functionalized carbon nanotubes and cold rolling, Journal of Materials Research, 2019, 34: 2600-2608.

[9] Xiaofeng Chen, Jingmei Tao*, Jianhong Yi, Yichun Liu, Rui Bao, Caiju Li, Songlin Tan, Xin You, Enhancing the strength of carbon nanotubes reinforced copper matrix composites by optimizing the interface structure and dispersion uniformity, 2018, 88: 74-84.

[10] Tao Jingmei*, Chen Xiaofeng, Hong Peng, Yi Jianhong, Microstructure and electrical conductivity of laminated Cu/CNT/Cu composites prepared by electrodeposition. Journal of Alloys & Compounds, 2017, 717: 232-239.

[11] Chen Xiaofeng, Tao Jingmei*, Yi Jinghong, Liu Yichun, Bao rui, Li Caiju, Electrodeposited Cu/buckypaper composites with high electrical conductivity and ampacity. Journal of Alloys & Compounds, 2018, 735: 163-171.

[122] Chen Xiaofeng, Tao Jingmei*, Yi Jianhong, Li Caiju, Bao Rui, Liu Yichun, You Xin, Tan Songlin, Balancing the strength and ductility of carbon nanotubes reinforced copper matrix composites with microlaminated structure and interdiffusion interface, Materials Science & Engineering A, 2018, 712: 790-793.

[13] Xiaofeng Chen, Tao Jingmei*, Jianhong Yi, Yichun Liu, Caiju Li, Rui Bao, Strengthening behavior of carbon nanotube-graphene hybrids in copper matrix composites, Materials Science & Engineering A, 2018, 718: 427-436.

[14] 陶静梅, 洪鹏, 陈小丰, 易健宏, 碳纳米管增强铜基复合材料的研究进展, 材料工程, 2017, 45(04): 128-136.

[15] Tao J MChen G MJian W WWang JZhu Y TZhu X K Langdon T GAnneal hardening of a nanostructured Cu-Al alloy processed by high-pressure torsion and rollingMaterials Science and Engineering A, 2015, 628207-215.

[16] Tao J M, Zhu X K, Tian W W, Yang P, Yang H, Properties and microstructure of Cu/diamond composites prepared through spark plasma sintering, Transactions of Nonferrous Metals Society of China, 10, 2014.

[17] Tao J M, Yang K, Xiong H, Wu X X, Zhu X K, Wen C. The defect structures and mechanical properties of Cu and Cu-Al alloys processed by split Hopkinson pressure bar, Materials Science and Engineering: A, 580: 406-409, 2013.

[18] Tao J M, Zhu X K, Scattergood R O, Koch C C, The thermal stability of high-energy ball-milled nanostructured Cu, Materials & Design, 50: 22-26, 2013.

专著(Books

[1] 朱心昆,陶静梅,块体纳米结构材料,科学出版社,17.1万字,2014

专利(Patents

[1] 陶静梅,陈小丰,易健宏,鲍瑞,李才巨,刘意春,游昕,谈松林,李凤仙。一种碳纳米管增强铜基复合材料的制备方法,授权日期:2019-7-5,中国,ZL2017106997055.0.

[2] 陶静梅,刘贵君,易健宏,鲍瑞,刘意春,李凤仙,李才巨,游昕,谈松林。一种裂解碳纳米管增强铜基复合材料的制备方法,授权日期:2020-7-31,中国,ZL201810862025.0.

[3] 陶静梅,王梦圆,易健宏,刘意春,鲍瑞,李凤仙,李才巨,游昕,谈松林。一种层状碳纳米管增强铜基复合材料的制备方法,授权日期:2020-12-15,中国,ZL201811562858.1.

[4] 陶静梅,魏霞,易健宏,鲍瑞,刘意春,李凤仙,李才巨,游昕,谈松林。一种具有层级结构的CNT-GO-Cu复合材料的制备方法,授权日期:2020-12-15,中国,ZL201811562857.7.

[5] 陶静梅,彭健,易健宏,鲍瑞,刘意春,李凤仙,李才巨,游昕,谈松林。一种氢气刻蚀的碳纳米管增强铜基复合材料的制备方法,授权日期:2021-5-11,中国,ZL201911259638.6.

[6] 陶静梅,刘杨,易健宏,鲍瑞,刘意春,李凤仙,李才巨,游昕,谈松林。一种通过界面调控制备碳纳米管-铜复合材料的方法,授权日期:2022-7-5,中国,ZL202110264109.6.

 

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